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Control strategies for residential battery energy storage systems coupled with PV systems

机译:与光伏系统耦合的住宅电池储能系统的控制策略

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This paper presents, and compares the performances of four control strategies for residential battery energy storages coupled with photovoltaic (PV) energy systems. The control strategies are: 1) rule based control, 2) optimization based control without utility constraints, 3) optimization based control with utility constraints, and 4) distributed control. The first two methods only concern about fulfilling the battery owner's requirements. In the other two methods, the utility is involved in controlling the operation of the batteries into certain extent. Therefore, the batteries intentionally contribute to lower the overvoltage risks while fulfilling the customers' needs. From the simulations it is shown that a significant reduction in reactive power support required from the converters can be achieved with optimization based control with utility constraints and distributed control schemes. Distributed control scheme shows best performance in terms of reduction in reactive power requirement, reduction in line losses and decreasing voltage unbalance. All these can be realized with little impact on the battery owner's desired objectives.
机译:本文呈现,并比较了与光伏(PV)能量系统相结合的住宅电池能量储存的四种控制策略的性能。控制策略是:1)基于规则的控制,2)基于实用的控制,没有实用的约束,3)基于实用的控制与实用的约束和4)分布式控制。前两种方法仅关注满足电池所有者的要求。在另外两种方法中,该实用程序涉及在一定程度上控制电池的操作。因此,电池故意有助于降低过压风险,同时满足客户的需求。从模拟中,可以通过基于实用的约束和分布式控制方案的优化控制可以实现转换器所需的无功功率支持的显着降低。分布式控制方案在无功功率要求的降低方面显示出最佳性能,降低线损耗和降低电压不平衡。所有这些都可以实现对电池所有者的所需目标的影响很小。

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